Intersection management for autonomous vehicles with vehicle-to-infrastructure communication. [PDF]
This paper proposes an intersection management strategy for autonomous vehicles under the vehicle-to-infrastructure circumstance. All vehicles are supposed to be fully autonomous and can communicate with the intersection management unit to check the ...
Yuying Li, Qipeng Liu
doaj +6 more sources
Multiobjective Optimization of Uplink NOMA-Enabled Vehicle-to-Infrastructure Communication [PDF]
Vehicular communication is gradually evolving from the rudimentary data exchange techniques to innovative, efficient, and large-scale communication platform.
Wali Ullah Khan +5 more
doaj +5 more sources
MAC performance analysis for vehicle-to-infrastructure communication [PDF]
The newly emerged vehicular ad hoc network adopts the contention based IEEE 802.11 DCF as its MAC. While it has been extensively studied in the stationary indoor environment (e.g., WLAN), the performance of DCF in the highly mobile vehicular environment is still unclear.
Ling, Xinhua +2 more
core +3 more sources
A Performance Benchmark for Dedicated Short-Range Communications and LTE-Based Cellular-V2X in the Context of Vehicle-to-Infrastructure Communication and Urban Scenarios. [PDF]
For more than a decade, communication systems based on the IEEE 802.11p technology—often referred to as Dedicated Short-Range Communications (DSRC)—have been considered a de facto industry standard for Vehicle-to-Infrastructure (V2I) communication.
Petrov T, Sevcik L, Pocta P, Dado M.
europepmc +2 more sources
An Automatic Incident Detection Method for a Vehicle-to-Infrastructure Communication Environment: Case Study of Interstate 64 in Missouri [PDF]
Transportation agencies continuously and consistently work to improve the processes and systems for mitigating the impacts of roadway incidents. Such efforts include utilizing emerging technologies to reduce the detection and response time to roadway ...
Kun Zhang, Jalil Kianfar
doaj +2 more sources
Vehicle-to-Infrastructure (V2I) communication is expected to bring tremendous benefits in terms of increased road safety, improved traffic efficiency and decreased environmental impact. In 2017, The 3rd Generation Partnership Project (3GPP) released 3GPP
Tibor Petrov +2 more
doaj +2 more sources
MmWave Vehicle-to-Infrastructure Communication: Analysis of Urban Microcellular Networks [PDF]
Vehicle-to-infrastructure (V2I) communication may provide high data rates to vehicles via millimeter-wave (mmWave) microcellular networks. This paper uses stochastic geometry to analyze the coverage of urban mmWave microcellular networks. Prior work used a pathloss model with a line-of-sight probability function based on randomly oriented buildings, to
Yuyang Wang +3 more
openaire +4 more sources
A novel network selection mechanism for vehicle-to-infrastructure communication [PDF]
The commercial deployment of 5G networks require heterogeneous multi-tier, multiple radio access technologies (RATs) to support vehicle-to-infrastructure (V2I) communication with diversified services.
Ndashimye, E, Ray, SK, Sarkar, NI
core +2 more sources
Vehicle to Infrastructure Communication for Dynamic Navigation Application
Nowadays, traffic congestion is a serious problem; it wastes people’s time, increases collision rate, delays emergency and contributes in environment pollution. This paper aims to reduce these effects and enhance road traffic infrastructure by using video cameras to monitor the streets, the video is processed to estimate traffic density then traffic ...
Dalia H. M. A. Haseeb +1 more
openaire +2 more sources
Supporting real-time data traffic in safety-critical, vehicle-to-infrastructure communication [PDF]
communicatio
Annette Böhm, Magnus Jonsson
core +2 more sources

